首页> 外文会议>Conference on New Advances in Condensed Matter Physics >The Effect of Compression Force on Alteration of Desloratadine and its Multicomponent Crystal Crystallinities Using X-Ray Diffraction and ATR-FTIR Techniques
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The Effect of Compression Force on Alteration of Desloratadine and its Multicomponent Crystal Crystallinities Using X-Ray Diffraction and ATR-FTIR Techniques

机译:压缩力对使用X射线衍射和ATR-FTIR技术改变蒸发氨酸及其多组分晶体晶体素的影响

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This work studied the effect of compression force on the desloratadine (DES) and its multi-component crystal (MCC) formulation and focused on the molecular crystal behavior of DES and MCC after compression. Crystallinity behavior of drugs in a mechanical process is to be interesting manner. In this research, DES and MCC were compressed using hydraulic presser equipped with 13 mm flat-face punch under different compression pressures in a range of 25 -350 MPa. The solid state of DES and its MCC was evaluated using powder X-ray diffraction (XRD) and attenuated total reflectance Fourier transform infrared (ATR-FTIR) spectroscopy. Single XRD was carried out to confirm the molecular structure of crystal lattice. Powder XRD diffractogram under different compression forces was compared to the crystallinity degree, crystallite size and peak broadening. Those parameters were processed using Origin software. Crystallinity degree was calculated using Ruland's methods, meanwhile, the crystallinity size was calculated using Scherrer's equation after corrected to the broadening (full width at half maximum; FWHM) and diffraction baseline. As increasing the compression force, degree and size of crystallinity and FWHM were altered. In addition, the degree of crystallinity and crystallite size of DES and MCC decreased, while the FWHM increased. Furthermore, alteration of PXRD in DES was higher than that of MCC which had no alteration as increase as the compression force. FTIR result showed that neither DES nor MCC had no significant alteration after compression. However, the tabletability of MCC was better than DES owing to the potential slip plane of MCC.
机译:这项工作研究了压缩力对去氯嘌呤(DES)及其多组分晶体(MCC)制剂的影响,并聚焦压缩后DES和MCC的分子晶体行为。机械过程中药物的结晶性是有趣的方式。在本研究中,使用在不同的压缩压力下的液压压力机压缩DES和MCC,在不同的压缩压力下,在25 -350MPa的范围内。使用粉末X射线衍射(XRD)评估DES及其MCC的固态,并减弱总反射率傅里叶变换红外(ATR-FTIR)光谱。进行单XRD以确认晶格的分子结构。将不同压缩力下的粉末XRD衍射图与结晶度,微晶尺寸和峰展宽进行比较。使用原始软件处理这些参数。同时,使用Ruland的方法计算结晶度,同时使用Scherrer的等式计算结晶度尺寸在校正到展大(半最大宽度的全宽)和衍射基线。随着增加压缩力,结晶度和FWHM的程度和尺寸被改变。另外,DES和MCC的结晶度和微晶尺寸降低,而FWHM增加。此外,DES中PXRD的改变高于MCC的PXRD,其没有随着压缩力的增加而没有变化。 FTIR结果表明,压缩后,DES和MCC没有显着改变。然而,由于MCC的潜在滑移平面,MCC的平面优于DES。

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